首页> 外文OA文献 >Karakterisasi Pisang Hibrid Tetraploid ‘GRNK\u27 Hasil Persilangan Pisang Triploid ‘Goroho\u27 dengan Pisang Iiar Diploid Musa Acuminata Colla Var. Nakaii Nasution
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Karakterisasi Pisang Hibrid Tetraploid ‘GRNK\u27 Hasil Persilangan Pisang Triploid ‘Goroho\u27 dengan Pisang Iiar Diploid Musa Acuminata Colla Var. Nakaii Nasution

机译:四倍体杂交香蕉N GRNK的表征三倍体香蕉'Goroho \ u27与二倍体香蕉Musa Acuminata Colla Var杂交的结果。 Nakaii Nasution

摘要

The use of tetraploid banana in triploid banana breeding has been conducted through 4x x 2x crossing and/or its reciprocals, 2x x 4x crossing. However, the availability of tetraploid banana is naturally very limited, therefore artificially induced tetraploid banana is needed. The present research is aimed to generate tetraploid banana plants by crossing triploid banana ‘Goroho\u27 as female parent with wild diploid banana, Musa acuminata var. nakaii Nasution as male parent, and to characterize the tetraploid hybrid. 94 crossings were made by pollinating stigma of Pisang Goroho with polen of M. acuminata var. nakaii. Embrios resulted from hybridization were in vitro rescued and propagated. Hybrid plantlets were then acclimatized in the green house and seedlings were planted in the field for two cycles of banana reproduction. Ploidy identification, morphology and molecular characteristics were also conducted for two cycles of banana reproduction. Results of the experiment showed that 9 hybrid seeds were produced from 94 pollinations. However, only 2 hybrid embryos grew and developed into shoots and from two shoots only one shoot was survived. The one shoot were then in-vitro propagated to produce 21 hybrids planted in the field. After being evaluated for two plant reproductive cycles, all hybrid plants were tetraploids (2n=4x=44). The hybrid plants had drooping leaves, bigger fruit diameter compared to both parents, and blunt fruit tip. DNA (RAPD) profiles of tetraploid hybrid showed that 37.5% of the bands were from female parent, 37.5% from male parents, and 25% from both parents. The tetraploid hybrid ‘GRNK\u27 is expected to be useful in triploid banana breeding in the future.
机译:四倍体香蕉在三倍体香蕉育种中的使用已通过4x x 2x杂交和/或其倒数2x x 4x杂交进行。然而,四倍体香蕉的可用性自然非常有限,因此需要人工诱导的四倍体香蕉。本研究旨在通过将雌性三倍体香蕉‘Goroho \ u27’与野生二倍体香蕉Musa acuminata var杂交来产生四倍体香蕉植物。 nakaii Nasution作为男性父母,并以四倍体杂种为特征。授粉过的Pisang Goroho柱头与A. acuminata var的杆n形成94个交点。中井杂交产生的胚胎被体外拯救和繁殖。然后使杂交苗在温室中适应,并在田间播种幼苗,以进行香蕉繁殖的两个周期。还对香蕉繁殖的两个周期进行了倍性鉴定,形态学和分子特性。实验结果表明,从94个授粉中产生了9个杂种种子。但是,只有2个杂种胚生长并发育成枝条,而从2个枝条中仅存活1个枝条。然后将一个芽进行体外繁殖,以产生21种在田间种植的杂种。在评估了两个植物的繁殖周期后,所有杂种植物均为四倍体(2n = 4x = 44)。杂种植物的叶子下垂,果实直径比父母双方都大,果尖钝。四倍体杂种的DNA(RAPD)图谱显示37.5%的条带来自雌性亲本,37.5%的雄性亲本和25%的双亲。四倍体杂交种'GRNK \ u27有望在将来用于三倍体香蕉育种。

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